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水溶液燃烧法制备的多孔羟基磷灰石和β-磷酸三钙的体内反应及其与生物玻璃支架的比较

In vivo response of porous hydroxyapatite and beta-tricalcium phosphate prepared by aqueous solution combustion method and comparison with bioglass scaffolds.

作者信息

Ghosh Samir K, Nandi Samit K, Kundu Biswanath, Datta Someswar, De Dipak K, Roy Sujit K, Basu Debabrata

机构信息

Central Glass and Ceramic Research Institute, Kolkata, India.

出版信息

J Biomed Mater Res B Appl Biomater. 2008 Jul;86(1):217-27. doi: 10.1002/jbm.b.31009.

Abstract

Pure hydroxyapatite (HAp) and a biphasic calcium phosphate [containing 90% of beta-tri-calcium phosphate (beta-TCP) and 10% HAp] were tailored through an aqueous solution combustion synthesis. Porous struts were prepared using all the powders along with bioglass, a known bioactive material, and subsequently characterized. Sterilized struts were implanted to the lateral side of radius bone of 24 black Bengal goats of either sex, in which a blank hole was left unfilled in a group of six specimens to act as control. The bone formation response of the three implanting materials in vivo has been studied using scanning electron microscope and histological analysis in contrast with positive controls. Push-out tests were used to assess the mechanical strength at the bone-biomaterial interface. It was observed that interfacial response was strongly dependent on combinations of different physical and chemical parameters. The surface of beta-TCP exhibited similar characteristics of bone and was distinct from those of intervening apatite layer of bioglass. Lower bone ingrowth and reduced strength was observed with HAp compared to beta-TCP/bioglass-based implants. Bone formation response of the Ca-P material varied according to the composition of the implanting material, which could be tailored through this novel synthesis.

摘要

通过水溶液燃烧合成法制备了纯羟基磷灰石(HAp)和一种双相磷酸钙[含90%的β-磷酸三钙(β-TCP)和10%的HAp]。使用所有这些粉末以及生物玻璃(一种已知的生物活性材料)制备了多孔支柱,随后对其进行了表征。将经过灭菌的支柱植入24只不同性别的黑色孟加拉山羊桡骨的外侧,其中一组六个标本留一个空白孔不填充作为对照。与阳性对照相比,使用扫描电子显微镜和组织学分析研究了三种植入材料在体内的骨形成反应。采用推出试验评估骨-生物材料界面的机械强度。观察到界面反应强烈依赖于不同物理和化学参数的组合。β-TCP的表面呈现出与骨相似的特征,与生物玻璃中间的磷灰石层不同。与基于β-TCP/生物玻璃的植入物相比,HAp的骨向内生长较低且强度降低。钙磷材料的骨形成反应根据植入材料的组成而变化,这可以通过这种新型合成方法进行定制。

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